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A novel ATP1A2 mutation in a patient with hypokalaemic periodic paralysis and CNS symptoms

机译:低血钾性周期性麻痹和中枢神经系统症状的患者中的新型ATP1A2突变

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摘要

Hypokalaemic periodic paralysis is a rare genetic neuromuscular disease characterized by episodes of skeletal muscle paralysis associated with low serum potassium. Muscle fibre inexcitability during attacks of paralysis is due to an aberrant depolarizing leak current through mutant voltage sensing domains of either the sarcolemmal voltage-gated calcium or sodium channel. We report a child with hypokalaemic periodic paralysis and CNS involvement, including seizures, but without mutations in the known periodic paralysis genes. We identified a novel heterozygous de novo missense mutation in the ATP1A2 gene encoding the α2 subunit of the Na+/K+-ATPase that is abundantly expressed in skeletal muscle and in brain astrocytes. Pump activity is crucial for Na+ and K+ homeostasis following sustained muscle or neuronal activity and its dysfunction is linked to the CNS disorders hemiplegic migraine and alternating hemiplegia of childhood, but muscle dysfunction has not been reported. Electrophysiological measurements of mutant pump activity in Xenopus oocytes revealed lower turnover rates in physiological extracellular K+ and an anomalous inward leak current in hypokalaemic conditions, predicted to lead to muscle depolarization. Our data provide important evidence supporting a leak current as the major pathomechanism underlying hypokalaemic periodic paralysis and indicate ATP1A2 as a new hypokalaemic periodic paralysis gene.
机译:低血钾性周期性麻痹是一种罕见的遗传性神经肌肉疾病,其特征是骨骼肌麻痹与低血钾相关。麻痹发作期间的肌纤维兴奋性是由于通过肌膜电压门控钙离子通道或钠离子通道的突变电压感应域的异常去极化漏电流引起的。我们报告一名儿童患有低钾血症性周期性麻痹和中枢神经系统受累,包括癫痫发作,但在已知的周期性麻痹基因中没有突变。我们在编码Na + / K + -ATPaseα2亚基的ATP1A2基因中鉴定了一个新的杂合从头错义突变,该突变在骨骼肌和大脑中大量表达星形胶质细胞。持续的肌肉或神经元活动后,泵的活动对于Na + 和K + 体内稳态至关重要,其功能障碍与中枢神经系统疾病偏瘫偏头痛和儿童交替偏瘫有关,但肌肉功能障碍尚未见报道。对非洲爪蟾卵母细胞中突变泵活性的电生理学测量表明,低钾血症条件下生理性细胞外K + 的转换率较低,并且内向泄漏电流异常,预计会导致肌肉去极化。我们的数据提供了重要的证据,支持泄漏电流是低钾血症性周期性麻痹的主要发病机制,并表明ATP1A2是新的低钾血症性周期性麻痹的基因。

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